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Neutrophils Self-Regulate Immune Complex-Mediated Cutaneous Inflammation through CXCL2

Authors :
Li, Jackson LiangYao
Lim, Chun Hwee
Tay, Fen Wei
Goh, Chi Ching
Devi, Sapna
Malleret, Benoit
Lee, Bernett
Bakocevic, Nadja
Chong, Shu Zhen
Evrard, Maximilien
Tanizaki, Hideaki
Lim, Hwee Ying
Russell, Bruce
Renia, Laurent
Zolezzi, Francesca
Poidinger, Michael
Angeli, Veronique
St. John, Ashley L.
Harris, John E.
Tey, Hong Liang
Tan, Suet Mien
Kabashima, Kenji
Weninger, Wolfgang
Larbi, Anis
Ng, Lai Guan
Source :
Journal of Investigative Dermatology; February 2016, Vol. 136 Issue: 2 p416-424, 9p
Publication Year :
2016

Abstract

Deposition of immune complexes (ICs) in tissues triggers acute inflammatory pathology characterized by massive neutrophil influx leading to edema and hemorrhage, and is especially associated with vasculitis of the skin, but the mechanisms that regulate this type III hypersensitivity process remain poorly understood. Here, using a combination of multiphoton intravital microscopy and genomic approaches, we re-examined the cutaneous reverse passive Arthus reaction and observed that IC-activated neutrophils underwent transmigration, triggered further IC formation, and transported these ICs into the interstitium, whereas neutrophil depletion drastically reduced IC formation and ameliorated vascular leakage in vivo. Thereafter, we show that these neutrophils expressed high levels of CXCL2, which further amplified neutrophil recruitment and activation in an autocrine and/or paracrine manner. Notably, CXCL1 expression was restricted to tissue-resident cell types, but IC-activated neutrophils may also indirectly, via soluble factors, modulate macrophage CXCL1 expression. Consistent with their distinct cellular origins and localization, only neutralization of CXCL2 but not CXCL1 in the interstitium effectively reduced neutrophil recruitment. In summary, our study establishes that neutrophils are able to self-regulate their own recruitment and responses during IC-mediated inflammation through a CXCL2-driven feed forward loop.

Details

Language :
English
ISSN :
0022202X and 15231747
Volume :
136
Issue :
2
Database :
Supplemental Index
Journal :
Journal of Investigative Dermatology
Publication Type :
Periodical
Accession number :
ejs37940514
Full Text :
https://doi.org/10.1038/JID.2015.410